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An effect of SMES using automatic generation control in a multi area power system

机译:SMES在多区域电力系统中使用自动发电控制的效果

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Since Superconducting Magnetic Energy Storage (SMES) unit with a self-commutated converter is capable of controlling both the active and reactive power simultaneously and quickly, increasing attention has been focused recently on power system stabilization by SMES control. In this paper investigates the self tuning control scheme for SMES is proposed and applied to Automatic Generation Control (AGC) in power system. The system is assumed to be consisting of two areas. The proposed self-tuning control scheme is used to implement the automatic generation control for load frequency control application adding to conventional control configuration. The effects of the self tuning configuration with Fuzzy Proportional Integral Controller (FPIC) in AGC on SMES control for the improvement of Load Frequency Control (LFC) is compared with that of PI controlled AGC. The effectiveness of the SMES control technique is investigated when Area Control Error (ACE) is used as the control input to SMES. The computer simulation of the two-area interconnected power system shows that the self tuning FPIC control scheme of AGC is very effective in damping out of the oscillations caused by load disturbances in one or both of the areas and it is also seen that the FPIC controlled SMES performs primary frequency control more effectively compared to PI controlled SMES in AGC control
机译:由于具有自换相转换器的超导磁储能(SMES)单元能够同时快速地控制有功功率和无功功率,因此最近越来越多的注意力集中在通过SMES控制的电力系统稳定上。本文研究了SMES的自整定控制方案,并将其应用于电力系统自动发电控制(AGC)。假定该系统由两个区域组成。所提出的自整定控制方案用于为负载频率控制应用添加常规控制配置,以实现自动发电控制。比较了AGC中带有模糊比例积分控制器(FPIC)的自整定配置对SMES控制以改善负载频率控制(LFC)的效果与PI控制的AGC的效果。当将区域控制错误(ACE)用作SMES的控制输入时,将研究SMES控制技术的有效性。两区域互联电力系统的计算机仿真表明,AGC的自整定FPIC控制方案在抑制由一个或两个区域中的负载扰动引起的振荡方面非常有效,并且还可以看到FPIC控制与AGC控制中的PI控制的SMES相比,SMES可以更有效地执行一次频率控制

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